论文标题
基于区块链的蜂窝V2X通信的有效采矿集群选择
Efficient Mining Cluster Selection for Blockchain-based Cellular V2X Communications
论文作者
论文摘要
预计未来几年,预示着自动驾驶汽车时代的通信(V2X)通信。随着区块链在此类网络中的集成,从整个区块到单个交易的所有粒度水平的信息都可以随时可用于车辆。具体而言,预计区块链技术将通过智能合约和分布式分类帐来提高蜂窝V2X通信的安全性,不变性和分散性。尽管基于区块链的蜂窝V2X网络具有希望,但需要解决许多挑战,以实现此类大型平台的未来互操作性和可访问性。一个挑战是蜂窝V2X网络中采矿任务的卸载。尽管运输当局可能会尝试平衡网络采矿负载,但车辆可能会选择最近的采矿集团来卸载任务。这可能会导致交通拥堵和对车辆网络资源的使用不成比例。为了解决这个问题,我们提出了一种游戏理论方法,用于平衡采矿簇的负载,同时保持卸载车辆之间的公平性。牢记车辆的低延迟要求,我们考虑了有限的通道区块变速器,该变速箱与使用无限区块长度代码相比更实用。我们提出的卸载框架获得的仿真结果表明,与常规的最近采矿集群选择技术相比,性能提高了。
Cellular vehicle-to-everything (V2X) communication is expected to herald the age of autonomous vehicles in the coming years. With the integration of blockchain in such networks, information of all granularity levels, from complete blocks to individual transactions, would be accessible to vehicles at any time. Specifically, the blockchain technology is expected to improve the security, immutability, and decentralization of cellular V2X communication through smart contract and distributed ledgers. Although blockchain-based cellular V2X networks hold promise, many challenges need to be addressed to enable the future interoperability and accessibility of such large-scale platforms. One such challenge is the offloading of mining tasks in cellular V2X networks. While transportation authorities may try to balance the network mining load, the vehicles may select the nearest mining clusters to offload a task. This may cause congestion and disproportionate use of vehicular network resources. To address this issue, we propose a game-theoretic approach for balancing the load at mining clusters while maintaining fairness among offloading vehicles. Keeping in mind the low-latency requirements of vehicles, we consider a finite channel blocklength transmission which is more practical compared to the use of infinite blocklength codes. The simulation results obtained with our proposed offloading framework show improved performance over the conventional nearest mining cluster selection technique.